Oxygen Activation Switch in the Copper Amine Oxidase of Escherichia coli

scientific article published on 24 August 2018

Oxygen Activation Switch in the Copper Amine Oxidase of Escherichia coli is …
instance of (P31):
scholarly articleQ13442814

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P5530Altmetric DOI10.1021/ACS.BIOCHEM.8B00633
P6179Dimensions Publication ID1106150702
P356DOI10.1021/ACS.BIOCHEM.8B00633
P953full work available at URLhttp://eprints.whiterose.ac.uk/134648
P6366Microsoft Academic ID2887547292
P932PMC publication ID6136094
P698PubMed publication ID30110143
P1154Scopus EID2-s2.0-85052330001

P50authorArwen R PearsonQ42119425
Michael J. McPhersonQ50262985
P2093author name stringMark A Smith
Peter F Knowles
Chi H Trinh
Katarzyna M Tych
Pascale Pirrat
Thembaninkosi G Gaule
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COPPER AMINE OXIDASE1 (CuAO1) of Arabidopsis thaliana contributes to abscisic acid- and polyamine-induced nitric oxide biosynthesis and abscisic acid signal transductionQ83798461
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The precursor form ofHansenula polymorphacopper amine oxidase 1 in complex with CuIand CoIIQ27681128
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Catalytic mechanism of the quinoenzyme amine oxidase from Escherichia coli: exploring the reductive half-reactionQ27734865
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Partial conversion of Hansenula polymorpha amine oxidase into a "plant" amine oxidase: implications for copper chemistry and mechanism.Q30363914
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Role of the interactions between the active site base and the substrate Schiff base in amine oxidase catalysis. Evidence from structural and spectroscopic studies of the 2-hydrazinopyridine adduct of Escherichia coli amine oxidaseQ30981786
CuI-semiquinone radical species in plant copper-amine oxidases.Q33686012
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O2 reactivity of flavoproteins: dynamic access of dioxygen to the active site and role of a H+ relay system in D-amino acid oxidaseQ34042539
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Molecular dioxygen enters the active site of 12/15-lipoxygenase via dynamic oxygen access channelsQ35941372
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Kinetics and spectroscopic evidence that the Cu(I)-semiquinone intermediate reduces molecular oxygen in the oxidative half-reaction of Arthrobacter globiformis amine oxidaseQ37375213
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Evidence of a self-catalytic mechanism of 2,4,5-trihydroxyphenylalanine quinone biogenesis in yeast copper amine oxidase.Q38301077
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P433issue36
P407language of work or nameEnglishQ1860
P921main subjectEscherichia coliQ25419
P304page(s)5301-5314
P577publication date2018-08-24
P1433published inBiochemistryQ764876
P1476titleOxygen Activation Switch in the Copper Amine Oxidase of Escherichia coli
P478volume57

Reverse relations

cites work (P2860)
Q64892401Characterization of the Preprocessed Copper Site Equilibrium in Amine Oxidase and Assignment of the Reactive Copper Site in Topaquinone Biogenesis.
Q90153840Comparative differential cuproproteomes of Rhodobacter capsulatus reveal novel copper homeostasis related proteins

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